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A Real-time Potency Assay for Chimeric Antigen Receptor T Cells Targeting Solid and Hematological Cancer Cells
Published on: November 12, 2019
Potency assays for therapeutic live whole cell cancer vaccines
John Petricciani1, William Egan, Giuseppe Vicari
1Office of Biologics, FDA, USA. jpiabs@aol.com
Abstract:
Therapeutic cancer vaccines are under development with the goal of enhancing the body's immune response to cancer cells sufficient to arrest cancer cell growth. Among the various approaches being used are those based on whole tumor cells. Developing a suitable measure of the potency of such vaccines presents a significant challenge because neither cellular associated markers nor in vivo biological responses that are correlated with efficacy have been identified; nevertheless, manufacturers and regulatory agencies will need to develop methods to evaluate these products. At this moment, the challenge for manufacturers who are developing whole cell vaccines is to demonstrate batch-to-batch consistency for the vaccine used in clinical studies and to show that comparable vaccine batches have the same capacity to achieve an acceptable level of biological activity that may be related to efficacy. This is particularly challenging in that animal models to test that activity do not exist and direct serological or immunological correlates of clinical protection are not available because protection has not yet been established in clinical trials. In the absence of well-defined biological markers and tests for manufacturing consistency, manufacturers and regulators will need to rely heavily on a highly reproducible manufacturing process--the consistency of the process therefore becomes critical. In developing regulatory approaches to whole cell cancer vaccines, the experience from the field of infectious disease vaccines should be examined for general guidance. A framework that draws heavily on the field of infectious disease vaccines is presented and suggests that at this point in the development of this new class of products, it is reasonable to develop data on quantitative antigen expression as a measure of potency with the expectation that when clinical efficacy has been established it will confirm the appropriateness of this approach. But because this will not be known until the end of a pivotal trial, a bioassay should be considered and run in parallel. Several examples of bioassays are presented along with their advantages and disadvantages. The final selection of a potency assay for use in lot release of a commercializable therapeutic whole cell vaccine ultimately will depend on the totality of the data available at the time of approval by regulatory agencies. Based on information currently available, it is likely that quantitative antigen expression or a bioassay could be used to measure potency. If both are determined to be acceptable, the use of quantitative antigen expression could be considered for routine lot release, while the bioassay could be reserved for use as one of the elements in establishing comparability when manufacturing changes are being considered after approval.
Insights
Developing therapeutic cancer vaccines faces potency measurement challenges. Quantitative antigen expression or bioassays are proposed for lot release, ensuring batch consistency and biological activity for cancer vaccine efficacy.
Area of Science:
- Immunology
- Oncology
- Vaccinology
Background:
- Therapeutic cancer vaccines aim to boost immune response against cancer cells.
- Whole tumor cell-based vaccines are a key approach, but potency measurement is challenging.
- Lack of established correlates of protection and animal models complicates efficacy assessment.
Purpose of the Study:
- To address the challenge of measuring potency for whole cell cancer vaccines.
- To propose a framework for evaluating vaccine consistency and biological activity.
- To guide manufacturers and regulatory agencies in developing robust assays.
Main Methods:
- Reviewing regulatory approaches from infectious disease vaccines.
- Proposing quantitative antigen expression as a preliminary potency measure.
- Suggesting parallel development and use of bioassays for validation.
Main Results:
- Quantitative antigen expression is a viable preliminary measure of potency.
- Bioassays are recommended for parallel evaluation and validation.
- Manufacturing process consistency is critical in the absence of direct efficacy markers.
Conclusions:
- Quantitative antigen expression or bioassays can be used for potency measurement.
- Quantitative antigen expression may be suitable for routine lot release.
- Bioassays can be reserved for comparability assessments during manufacturing changes.
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